Patents by Inventor Thomas J. Kulp

Thomas J. Kulp has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7486399
    Abstract: A system is described that is suitable for use in determining the location of leaks of gases having a background concentration. The system is a point-wise backscatter absorption gas measurement system that measures absorption and distance to each point of an image. The absorption measurement provides an indication of the total amount of a gas of interest, and the distance provides an estimate of the background concentration of gas. The distance is measured from the time-of-flight of laser pulse that is generated along with the absorption measurement light. The measurements are formatted into an image of the presence of gas in excess of the background. Alternatively, an image of the scene is superimposed on the image of the gas to aid in locating leaks. By further modeling excess gas as a plume having a known concentration profile, the present system provides an estimate of the maximum concentration of the gas of interest.
    Type: Grant
    Filed: February 4, 2008
    Date of Patent: February 3, 2009
    Assignee: Sandia Corporation
    Inventors: Thomas A. Reichardt, Amy Khai Luong, Thomas J. Kulp, Sanjay Devdas
  • Patent number: 7375814
    Abstract: A system is described that is suitable for use in determining the location of leaks of gases having a background concentration. The system is a point-wise backscatter absorption gas measurement system that measures absorption and distance to each point of an image. The absorption measurement provides an indication of the total amount of a gas of interest, and the distance provides an estimate of the background concentration of gas. The distance is measured from the time-of-flight of laser pulse that is generated along with the absorption measurement light. The measurements are formated into an image of the presence of gas in excess of the background. Alternatively, an image of the scene is superimosed on the image of the gas to aid in locating leaks. By further modeling excess gas as a plume having a known concentration profile, the present system provides an estimate of the maximum concentration of the gas of interest.
    Type: Grant
    Filed: March 11, 2005
    Date of Patent: May 20, 2008
    Assignee: Sandia Corporation
    Inventors: Thomas A. Reichardt, Amy Khai Luong, Thomas J. Kulp, Sanjay Devdas
  • Patent number: 6975402
    Abstract: The present invention provides a photoacoustic spectrometer that is field portable and capable of speciating complex organic molecules in the gas phase. The spectrometer has a tunable light source that has the ability to resolve the fine structure of these molecules over a large wavelength range. The inventive light source includes an optical parametric oscillator (OPO) having combined fine and coarse tuning. By pumping the OPO with the output from a doped-fiber optical amplifier pumped by a diode seed laser, the inventive spectrometer is able to speciate mixtures having parts per billion of organic compounds, with a light source that has a high efficiency and small size, allowing for portability. In an alternative embodiment, the spectrometer is scanned by controlling the laser wavelength, thus resulting in an even more compact and efficient design.
    Type: Grant
    Filed: November 19, 2002
    Date of Patent: December 13, 2005
    Assignee: Sandia National Laboratories
    Inventors: Scott E. Bisson, Thomas J. Kulp, Karla M. Armstrong
  • Publication number: 20040095579
    Abstract: The present invention provides a photoacoustic spectrometer that is field portable and capable of speciating complex organic molecules in the gas phase. The spectrometer has a tunable light source that has the ability to resolve the fine structure of these molecules over a large wavelength range. The inventive light source includes an optical parametric oscillator (OPO) having combined fine and coarse tuning. By pumping the OPO with the output from a doped-fiber optical amplifier pumped by a diode seed laser, the inventive spectrometer is able to speciate mixtures having parts per billion of organic compounds, with a light source that has a high efficiency and small size, allowing for portability. In an alternative embodiment, the spectrometer is scanned by controlling the laser wavelength, thus resulting in an even more compact and efficient design.
    Type: Application
    Filed: November 19, 2002
    Publication date: May 20, 2004
    Inventors: Scott E. Bisson, Thomas J. Kulp, Karla M. Armstrong
  • Patent number: 6690472
    Abstract: An active (laser-illuminated) imaging system is described that is suitable for use in backscatter absorption gas imaging (BAGI). A BAGI imager operates by imaging a scene as it is illuminated with radiation that is absorbed by the gas to be detected. Gases become “visible” in the image when they attenuate the illumination creating a shadow in the image. This disclosure describes a BAGI imager that operates in a linescanned manner using a high repetition rate pulsed laser as its illumination source. The format of this system allows differential imaging, in which the scene is illuminated with light at least 2 wavelengths—one or more absorbed by the gas and one or more not absorbed. The system is designed to accomplish imaging in a manner that is insensitive to motion of the camera, so that it can be held in the hand of an operator or operated from a moving vehicle.
    Type: Grant
    Filed: September 26, 2001
    Date of Patent: February 10, 2004
    Assignee: Sandia National Laboratories
    Inventors: Thomas J. Kulp, Thomas A. Reichardt, Randal L. Schmitt, Ray P. Bambha
  • Publication number: 20020071122
    Abstract: An active (laser-illuminated) imaging system is described that is suitable for use in backscatter absorption gas imaging (BAGI). A BAGI imager operates by imaging a scene as it is illuminated with radiation that is absorbed by the gas to be detected. Gases become “visible” in the image when they attenuate the illumination creating a shadow in the image. This disclosure describes a BAGI imager that operates in a linescanned manner using a high repetition rate pulsed laser as its illumination source. The format of this system allows differential imaging, in which the scene is illuminated with light at least 2 wavelengths—one or more absorbed by the gas and one or more not absorbed. The system is designed to accomplish imaging in a manner that is insensitive to motion of the camera, so that it can be held in the hand of an operator or operated from a moving vehicle.
    Type: Application
    Filed: September 26, 2001
    Publication date: June 13, 2002
    Inventors: Thomas J. Kulp, Thomas A. Reichardt, Randal L. Schmitt, Ray P. Bambha
  • Patent number: 6359914
    Abstract: A tunable pulsed narrow bandwidth light source and a method of operating a light source are provided. The light source includes a pump laser, first and second non-linear optical crystals, a tunable filter, and light pulse directing optics.
    Type: Grant
    Filed: October 4, 1999
    Date of Patent: March 19, 2002
    Assignee: University of Dayton
    Inventors: Peter E. Powers, Thomas J. Kulp